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Influences of high-volume fly ash and bottom ash as feldspar replacements on eco-friendly ceramic building materials
Ming Gin Lee,
Wei Chien Wang
, Yishuo Huang, Tai Mi Lee, Yung Chih Lin
土木工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
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深入研究「Influences of high-volume fly ash and bottom ash as feldspar replacements on eco-friendly ceramic building materials」主題。共同形成了獨特的指紋。
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Keyphrases
After High Temperature
16%
Bending Strength
16%
Bottom Ash
100%
Building Ceramics
16%
Ceramic Building Materials
100%
Ceramic Raw Materials
16%
Coal Ash
33%
Coal Fly Ash
16%
Eco-friendly
100%
Facing Bricks
16%
Feldspar
100%
Fired Ceramics
16%
Fly Ash
33%
High Volume Fly Ash
100%
High-temperature Sintering
16%
Physical Properties
16%
Recycling Methods
16%
Resistance Test
16%
Shrinkage Rate
16%
Sintering Temperature
16%
Sustainable Recycling
16%
Temperature Range
16%
Thermal Power Plant
16%
Thermal Shock Resistance
50%
Volume Loss
16%
Material Science
Building Material
100%
Coal Ash
50%
Feldspar
100%
Flexural Strength
25%
Physical Property
25%
Sintering Temperature
50%
Thermal Shock Resistance
75%
Engineering
Ash Sample
16%
Bending Strength
16%
Bottom Ash
100%
Building Material
100%
Electric Power Plant
16%
Flatness
16%
High-Temperature Sintering
16%
Requirement Specification
16%
Requirement Standard
16%
Resistance Test
16%
Sintering Temperature
16%
Temperature Range
16%
Test Result
16%